/*
- * Copyright (C) 2005-2013 Andre Noll <maan@systemlinux.org>
+ * Copyright (C) 2005-2014 Andre Noll <maan@tuebingen.mpg.de>
*
* Licensed under the GPL v2. For licencing details see COPYING.
*/
/** \file audiod.c The paraslash's audio daemon. */
+
+#include <netinet/in.h>
+#include <sys/socket.h>
#include <regex.h>
#include <sys/types.h>
+#include <arpa/inet.h>
+#include <sys/un.h>
+#include <netdb.h>
#include <signal.h>
#include "para.h"
*/
struct sched sched = {.max_fileno = 0};
-/**
- * The task for obtaining para_server's status (para_client stat).
- *
- * \sa struct task, struct sched.
- */
+/* The task for obtaining para_server's status (para_client stat). */
struct status_task {
/** The associated task structure of audiod. */
- struct task task;
+ struct task *task;
/** Client data associated with the stat task. */
struct client_task *ct;
/** Do not restart client command until this time. */
/** the local listening socket */
int fd;
/** the associated task structure */
- struct task task;
+ struct task *task;
};
/** iterate over all supported audio formats */
* from the status items received from para_server and the start time of the
* (first) writer of the given slot.
*
- * It has to to take into account that probably the stream was not started at
+ * It has to take into account that the stream was probably not started at
* the beginning of the file, that the clock between the server and the client
* host may differ and that playback of the stream was delayed, e.g. because
* the prebuffer filter is used in the filter configuration of the given slot.
audio_formats[s->format], slot_num);
a->receiver->close(s->receiver_node);
btr_remove_node(&s->receiver_node->btrn);
+ task_reap(&s->receiver_node->task);
free(s->receiver_node);
s->receiver_node = NULL;
tv_add(now, &(struct timeval)EMBRACE(0, 200 * 1000),
PARA_INFO_LOG("closing %s\n", writer_names[wn->writer_num]);
w->close(wn);
btr_remove_node(&wn->btrn);
+ task_reap(&wn->task);
}
static void close_writers(struct slot_info *s)
struct audio_format_info *a = afi + s->format;
if (a->num_filters == 0)
return;
- for (i = 0; i < a->num_filters; i++) {
+ for (i = a->num_filters - 1; i >= 0; i--) {
struct filter_node *fn = s->fns + i;
struct filter *f;
if (f->close)
f->close(fn);
btr_remove_node(&fn->btrn);
+ task_reap(&fn->task);
}
free(s->fns);
s->fns = NULL;
continue;
if (!s->receiver_node)
continue;
- task_notify(&s->receiver_node->task, error);
+ task_notify(s->receiver_node->task, error);
}
}
s->fns = para_calloc(nf * sizeof(struct filter_node));
parent = s->receiver_node->btrn;
for (i = 0; i < nf; i++) {
+ char buf[20];
struct filter *f = filters + a->filter_nums[i];
fn = s->fns + i;
fn->filter_num = a->filter_nums[i];
fn->conf = a->filter_conf[i];
- fn->task.pre_select = f->pre_select;
- fn->task.post_select = f->post_select;
fn->btrn = btr_new_node(&(struct btr_node_description)
EMBRACE(.name = f->name, .parent = parent,
.handler = f->execute, .context = fn));
f->open(fn);
- register_task(&sched, &fn->task);
+ sprintf(buf, "%s (slot %d)", f->name, (int)(s - slot));
+ fn->task = task_register(&(struct task_info) {
+ .name = buf,
+ .pre_select = f->pre_select,
+ .post_select = f->post_select,
+ .context = fn,
+ }, &sched);
parent = fn->btrn;
PARA_NOTICE_LOG("%s filter %d/%d (%s) started in slot %d\n",
audio_formats[s->format], i, nf, f->name, (int)(s - slot));
- sprintf(fn->task.status, "%s (slot %d)", f->name, (int)(s - slot));
}
}
assert(s->wns == NULL);
s->wns = para_calloc(PARA_MAX(1U, a->num_writers)
* sizeof(struct writer_node));
- PARA_INFO_LOG("opening %s writers\n", audio_formats[s->format]);
for (i = 0; i < a->num_writers; i++) {
wn = s->wns + i;
wn->conf = a->writer_conf[i];
wn->writer_num = a->writer_nums[i];
register_writer_node(wn, parent, &sched);
+ PARA_NOTICE_LOG("%s writer started in slot %d\n",
+ writer_names[a->writer_nums[i]], (int)(s - slot));
}
}
s->receiver_node = rn;
PARA_NOTICE_LOG("started %s: %s receiver in slot %d\n",
audio_formats[format], r->name, slot_num);
- rn->task.pre_select = r->pre_select;
- rn->task.post_select = r->post_select;
- sprintf(rn->task.status, "%s receiver node", r->name);
- register_task(&sched, &rn->task);
+ rn->task = task_register(&(struct task_info) {
+ .name = r->name,
+ .pre_select = r->pre_select,
+ .post_select = r->post_select,
+ .context = rn,
+ }, &sched);
return slot_num;
}
if (!s->receiver_node)
continue;
- if (s->receiver_node->task.error >= 0)
+ if (task_status(s->receiver_node->task) >= 0)
return true;
if (ss1 == ss2)
return true;
struct timeval rstime;
if (!s->receiver_node)
continue;
- if (s->receiver_node->task.error < 0)
+ if (task_status(s->receiver_node->task) < 0)
continue;
btr_get_node_start(s->receiver_node->btrn, &rstime);
if (newest_slot >= 0 && tv_diff(&rstime, &newest_rstime, NULL) < 0)
return true;
}
-static unsigned compute_time_diff(const struct timeval *status_time)
+static void compute_time_diff(const struct timeval *status_time)
{
struct timeval tmp, diff;
static unsigned count;
const struct timeval max_deviation = {0, 500 * 1000};
const int time_smooth = 5;
- if (!status_time)
- return count;
sign = tv_diff(status_time, now, &diff);
// PARA_NOTICE_LOG("%s: sign = %i, sa_time_diff_sign = %i\n", __func__,
// sign, sa_time_diff_sign);
);
out:
stat_task->sa_time_diff_sign = sa_time_diff_sign;
- return count;
}
static int update_item(int itemnum, char *buf)
static int parse_filter_args(void)
{
- int i, j, ret, af_mask;
+ int i, j, ret, af_mask, num_matches;
for (i = 0; i < conf.filter_given; i++) {
char *arg;
if (ret < 0)
goto out;
af_mask = ret;
+ num_matches = 0;
FOR_EACH_AUDIO_FORMAT(j) {
if ((af_mask & (1 << j)) == 0) /* no match */
continue;
ret = add_filter(j, arg);
if (ret < 0)
goto out;
+ num_matches++;
}
+ if (num_matches == 0)
+ PARA_WARNING_LOG("ignoring filter spec: %s\n",
+ conf.filter_arg[i]);
}
ret = init_default_filters(); /* use default values for the rest */
out:
exit(EXIT_FAILURE);
}
-static void signal_pre_select(struct sched *s, struct task *t)
+static void signal_pre_select(struct sched *s, void *context)
{
- struct signal_task *st = container_of(t, struct signal_task, task);
+ struct signal_task *st = context;
para_fd_set(st->fd, &s->rfds, &s->max_fileno);
}
-static int signal_post_select(struct sched *s, __a_unused struct task *t)
+static int signal_post_select(struct sched *s, void *context)
{
- int signum;
+ struct signal_task *st = context;
+ int ret, signum;
+ ret = task_get_notification(st->task);
+ if (ret < 0)
+ return ret;
signum = para_next_signal(&s->rfds);
switch (signum) {
case SIGINT:
case SIGTERM:
case SIGHUP:
- PARA_EMERG_LOG("terminating on signal %d\n", signum);
- clean_exit(EXIT_FAILURE, "caught deadly signal");
+ PARA_NOTICE_LOG("received signal %d\n", signum);
+ task_notify_all(s, E_AUDIOD_SIGNAL);
+ return -E_AUDIOD_SIGNAL;
}
return 0;
}
-static void signal_setup_default(struct signal_task *st)
+static void command_pre_select(struct sched *s, void *context)
{
- st->task.pre_select = signal_pre_select;
- st->task.post_select = signal_post_select;
- sprintf(st->task.status, "signal task");
-}
-
-static void command_pre_select(struct sched *s, struct task *t)
-{
- struct command_task *ct = container_of(t, struct command_task, task);
+ struct command_task *ct = context;
para_fd_set(ct->fd, &s->rfds, &s->max_fileno);
}
-static int command_post_select(struct sched *s, struct task *t)
+static int command_post_select(struct sched *s, void *context)
{
int ret;
- struct command_task *ct = container_of(t, struct command_task, task);
+ struct command_task *ct = context;
static struct timeval last_status_dump;
- struct timeval tmp, delay = {0, 500 * 1000};
+ struct timeval tmp, delay;
+ bool force = true;
- tv_add(&last_status_dump, &delay, &tmp);
- if (tv_diff(&tmp, now, NULL) < 0) {
- audiod_status_dump();
- last_status_dump = *now;
- }
-
- ret = handle_connect(ct->fd, &s->rfds);
+ ret = task_get_notification(ct->task);
if (ret < 0)
+ return ret;
+ ret = handle_connect(ct->fd, &s->rfds);
+ if (ret < 0) {
PARA_ERROR_LOG("%s\n", para_strerror(-ret));
- audiod_status_dump();
- return 0;
+ if (ret == -E_AUDIOD_TERM) {
+ task_notify_all(s, -ret);
+ return ret;
+ }
+ } else if (ret > 0)
+ goto dump;
+
+ /* if last status dump was less than 500ms ago, do nothing */
+ delay.tv_sec = 0;
+ delay.tv_usec = 500 * 1000;
+ tv_add(&last_status_dump, &delay, &tmp);
+ if (tv_diff(now, &tmp, NULL) < 0)
+ return 0;
+
+ /*
+ * If last status dump was more than 5s ago, force update. Otherwise,
+ * update only those items that have changed.
+ */
+ delay.tv_sec = 5;
+ delay.tv_usec = 0;
+ tv_add(&last_status_dump, &delay, &tmp);
+ if (tv_diff(now, &tmp, NULL) < 0)
+ force = false;
+dump:
+ audiod_status_dump(force);
+ last_status_dump = *now;
+ return 1;
}
static void init_command_task(struct command_task *ct)
{
- ct->task.pre_select = command_pre_select;
- ct->task.post_select = command_post_select;
- ct->task.error = 0;
ct->fd = audiod_get_socket(); /* doesn't return on errors */
- sprintf(ct->task.status, "command task");
+
+ ct->task = task_register(&(struct task_info) {
+ .name = "command",
+ .pre_select = command_pre_select,
+ .post_select = command_post_select,
+ .context = ct,
+ }, &sched);
}
static void close_stat_pipe(void)
{
if (!stat_task->ct)
return;
+ task_reap(&stat_task->ct->task);
client_close(stat_task->ct);
stat_task->ct = NULL;
clear_and_dump_items();
stat_task->offset_seconds = 0;
stat_task->vss_status = 0;
stat_task->current_audio_format_num = -1;
- audiod_status_dump();
-}
-
-/**
- * close the connection to para_server and exit
- *
- * \param status the exit status which is passed to exit(3)
- * \param msg the log message
- *
- * Log \a msg with loglevel \p EMERG, close the connection to para_server if
- * open, and call \p exit(status). \a status should be either EXIT_SUCCESS or
- * EXIT_FAILURE.
- *
- * \sa exit(3)
- */
-void __noreturn clean_exit(int status, const char *msg)
-{
- PARA_EMERG_LOG("%s\n", msg);
- if (socket_name)
- unlink(socket_name);
- close_stat_pipe();
- exit(status);
+ audiod_status_dump(true);
}
/* avoid busy loop if server is down */
if (s->format < 0)
return false;
- if (s->receiver_node && s->receiver_node->task.error >= 0)
+ if (s->receiver_node && task_status(s->receiver_node->task) >= 0)
return false;
for (i = 0; i < a->num_filters; i++)
- if (s->fns && s->fns[i].task.error >= 0)
+ if (s->fns && task_status(s->fns[i].task) >= 0)
return false;
if (a->num_writers > 0) {
for (i = 0; i < a->num_writers; i++)
- if (s->wns && s->wns[i].task.error >= 0)
+ if (s->wns && task_status(s->wns[i].task) >= 0)
return false;
} else {
- if (s->wns && s->wns[0].task.error >= 0)
+ if (s->wns && task_status(s->wns[0].task) >= 0)
return false;
}
return true;
}
+static void close_slot(int slot_num)
+{
+ struct slot_info *s = slot + slot_num;
+
+ PARA_INFO_LOG("closing slot %d\n", slot_num);
+ close_writers(s);
+ close_filters(s);
+ close_receiver(slot_num);
+ clear_slot(slot_num);
+}
+
static void close_unused_slots(void)
{
int i;
- FOR_EACH_SLOT(i) {
- struct slot_info *s = slot + i;
- if (!must_close_slot(i))
- continue;
- PARA_INFO_LOG("closing slot %d\n", i);
- close_writers(s);
- close_filters(s);
- close_receiver(i);
- clear_slot(i);
- }
+ FOR_EACH_SLOT(i)
+ if (must_close_slot(i))
+ close_slot(i);
+}
+
+/*
+ * Cleanup all resources.
+ *
+ * This performs various cleanups, removes the audiod socket and closes the
+ * connection to para_server.
+ */
+static void audiod_cleanup(void)
+{
+ if (socket_name)
+ unlink(socket_name);
+ close_stat_pipe();
+ close_unused_slots();
+ audiod_cmdline_parser_free(&conf);
+ close_stat_clients();
}
/*
{
int ret;
struct slot_info *sl;
- struct audio_format_info *a;
close_unused_slots();
if (audiod_status != AUDIOD_ON ||
return;
}
sl = slot + ret;
- a = afi + sl->format;
- if (a->num_filters)
- open_filters(sl);
+ open_filters(sl);
open_writers(sl);
activate_grab_clients(&sched);
btr_log_tree(sl->receiver_node->btrn, LL_NOTICE);
}
-static void status_pre_select(struct sched *s, struct task *t)
+static void status_pre_select(struct sched *s, void *context)
{
- struct status_task *st = container_of(t, struct status_task, task);
+ struct status_task *st = context;
int i, ret, cafn = stat_task->current_audio_format_num;
if (must_start_decoder())
}
/* restart the client task if necessary */
-static int status_post_select(struct sched *s, struct task *t)
+static int status_post_select(struct sched *s, void *context)
{
- struct status_task *st = container_of(t, struct status_task, task);
+ struct status_task *st = context;
+ int ret;
+ ret = task_get_notification(st->task);
+ if (ret < 0)
+ return ret;
if (audiod_status == AUDIOD_OFF) {
if (!st->ct)
goto out;
- if (st->ct->task.error >= 0) {
- task_notify(&st->ct->task, E_AUDIOD_OFF);
+ if (task_status(st->ct->task) >= 0) {
+ task_notify(st->ct->task, E_AUDIOD_OFF);
goto out;
}
close_stat_pipe();
if (st->ct) {
char *buf;
size_t sz;
- int ret;
- if (st->ct->task.error < 0) {
+
+ ret = btr_node_status(st->btrn, st->min_iqs, BTR_NT_LEAF);
+ if (ret < 0) {
close_stat_pipe();
goto out;
}
- if (st->ct->status != CL_RECEIVING)
+ if (st->ct->status != CL_EXECUTING)
goto out;
- ret = btr_node_status(st->btrn, st->min_iqs, BTR_NT_LEAF);
- if (ret <= 0) {
+ if (ret == 0) {
struct timeval diff;
tv_diff(now, &st->last_status_read, &diff);
if (diff.tv_sec > 61)
- task_notify(&st->ct->task, E_AUDIOD_OFF);
+ task_notify(st->ct->task, E_STATUS_TIMEOUT);
goto out;
}
btr_merge(st->btrn, st->min_iqs);
sz = btr_next_buffer(st->btrn, &buf);
ret = for_each_stat_item(buf, sz, update_item);
if (ret < 0) {
- task_notify(&st->ct->task, E_AUDIOD_OFF);
+ task_notify(st->ct->task, -ret);
goto out;
}
if (sz != ret) {
static void init_status_task(struct status_task *st)
{
memset(st, 0, sizeof(struct status_task));
- st->task.pre_select = status_pre_select;
- st->task.post_select = status_post_select;
st->sa_time_diff_sign = 1;
st->clock_diff_count = conf.clock_diff_count_arg;
st->current_audio_format_num = -1;
- sprintf(st->task.status, "stat");
st->btrn = btr_new_node(&(struct btr_node_description)
EMBRACE(.name = "stat"));
+
+ stat_task->task = task_register(&(struct task_info) {
+ .name = "stat",
+ .pre_select = status_pre_select,
+ .post_select = status_post_select,
+ .context = stat_task,
+ }, &sched);
}
static void set_initial_status(void)
__noreturn static void print_help_and_die(void)
{
- int d = conf.detailed_help_given;
- const char **p = d? audiod_args_info_detailed_help
- : audiod_args_info_help;
-
- printf_or_die("%s\n\n", version_single_line("audiod"));
- printf_or_die("%s\n\n", audiod_args_info_usage);
- for (; *p; p++)
- printf_or_die("%s\n", *p);
- print_receiver_helps(d);
- print_filter_helps(d);
- print_writer_helps(d);
+ struct ggo_help h = DEFINE_GGO_HELP(audiod);
+ bool d = conf.detailed_help_given;
+ unsigned flags;
+
+ flags = d? GPH_STANDARD_FLAGS_DETAILED : GPH_STANDARD_FLAGS;
+ ggo_print_help(&h, flags);
+
+ flags = d? GPH_MODULE_FLAGS_DETAILED : GPH_MODULE_FLAGS;
+ print_receiver_helps(flags);
+ print_filter_helps(flags);
+ print_writer_helps(flags);
exit(0);
}
writer_init();
if (conf.help_given || conf.detailed_help_given)
print_help_and_die();
- drop_privileges_or_die(conf.user_arg, conf.group_arg);
+ daemon_drop_privileges_or_die(conf.user_arg, conf.group_arg);
parse_config_or_die();
init_colors_or_die();
init_random_seed_or_die();
PARA_EMERG_LOG("%s\n", para_strerror(-ret));
exit(EXIT_FAILURE);
}
- log_welcome("para_audiod");
- set_server_start_time(NULL);
+ daemon_log_welcome("para_audiod");
+ daemon_set_start_time();
set_initial_status();
FOR_EACH_SLOT(i)
clear_slot(i);
setup_signal_handling();
- signal_setup_default(sig_task);
init_status_task(stat_task);
init_command_task(cmd_task);
if (conf.daemon_given)
daemonize(false /* parent exits immediately */);
- register_task(&sched, &sig_task->task);
- register_task(&sched, &cmd_task->task);
- register_task(&sched, &stat_task->task);
+ sig_task->task = task_register(&(struct task_info) {
+ .name = "signal",
+ .pre_select = signal_pre_select,
+ .post_select = signal_post_select,
+ .context = sig_task,
+ }, &sched);
+
sched.default_timeout.tv_sec = 2;
sched.default_timeout.tv_usec = 999 * 1000;
ret = schedule(&sched);
+ audiod_cleanup();
+ sched_shutdown(&sched);
- PARA_EMERG_LOG("%s\n", para_strerror(-ret));
- return EXIT_FAILURE;
+ if (ret < 0)
+ PARA_EMERG_LOG("%s\n", para_strerror(-ret));
+ return ret < 0? EXIT_FAILURE : EXIT_SUCCESS;
}